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Permafrost as a critical factor in paleoclimate modelling: the Younger Dryas case in Europe

机译:多年冻土是古气候模拟的关键因素:欧洲的Younger Dryas案例

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Simulations with an atmospheric climate model of the Younger Dryas climate, a distinct cooling event around 12 kyr cal B.P., were compared with temperature reconstructions based on fossil plant data. In one experiment we forced the model to maintain a wet and frozen soil at high latitudes to reproduce the effect of permafrost in the model. This measure resulted in a climate similar to the reconstructions with a depression of the summer temperatures in Eurasia by 4-8 ℃ and an increase in precipitation. This suggests that permafrost may have played a more important role in driving paleoclimates (such as the Younger Dryas climate) than believed until now. This calls for re-evaluation of (paleo)climate simulations in which permafrost was not explicitly included.
机译:使用大气化学模型模拟Younger Dryas气候,约12千帕B.P.的明显降温事件,并与基于化石植物数据的温度重建进行了比较。在一个实验中,我们强迫模型在高纬度地区保持湿润和冻结的土壤,以重现模型中的多年冻土效应。该措施导致了与重建类似的气候,欧亚大陆夏季温度降低了4-8℃,降水增加了。这表明,迄今为止,多年冻土在推动古气候(例如更年轻的树蛙气候)方面可能发挥了更重要的作用。这要求对未明确包括多年冻土层的(古)气候模拟进行重新评估。

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